• DocumentCode
    1439028
  • Title

    Large Families of Asymptotically Optimal Two-Dimensional Optical Orthogonal Codes

  • Author

    Omrani, Reza ; Garg, Gagan ; Kumar, P. Vijay ; Elia, Petros ; Bhambhani, Pankaj

  • Author_Institution
    Broadcom Corp., Sunnyvale, CA, USA
  • Volume
    58
  • Issue
    2
  • fYear
    2012
  • Firstpage
    1163
  • Lastpage
    1185
  • Abstract
    Nine new two-dimensional Optical Orthogonal Codes (2-D OOCs) are presented here, all sharing the common feature of a code size that is much larger in relation to the number of time slots than those of constructions appearing previously in the literature. Each of these constructions is either optimal or asymptotically optimal with respect to either the original Johnson bound or else a nonbinary version of the Johnson bound introduced in this paper. The first five codes are constructed using polynomials over finite fields-the first construction is optimal while the remaining four are asymptotically optimal. The next two codes are constructed using rational functions in place of polynomials and these are asymptotically optimal. The last two codes, also asymptotically optimal, are constructed by composing two of the above codes with a constant weight binary code. Also presented is a three-dimensional Optical Orthogonal Code (3-D OOC) that exploits the polarization dimension. Finally, phase-encoded optical CDMA is considered and construction of two efficient codes are provided.
  • Keywords
    code division multiple access; optical communication; orthogonal codes; asymptotically optimal two dimensional optical orthogonal codes; code size; nonbinary Johnson bound; phase encoded optical CDMA; polynomials over finite field; rational function; three dimensional optical orthogonal code; two dimensional optical orthogonal codes; Binary codes; Correlation; Encoding; Integrated optics; Multiaccess communication; Optical polarization; Optical pulses; 2-D OOC; 2-D codes; Johnson bound; OCDMA; optical CDMA; optical orthogonal codes; phase-encoded OCDMA; wavelength-time hopping codes;
  • fLanguage
    English
  • Journal_Title
    Information Theory, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9448
  • Type

    jour

  • DOI
    10.1109/TIT.2011.2169299
  • Filename
    6145476